Characterisation of X chromosome status of human extended pluripotent stem cells

Author:

Wang Ying12,Yang Ning12,Sun Wen13,Zhao Chen1,Hu Xiaoxuan12,Lu Shan12,Cao Shiwei12,Wang Nannan12,Hai Tang1ORCID,Feng Guihai134ORCID,An Chenrui5,Wang Haoyi1234ORCID

Affiliation:

1. State Key Laboratory of Stem Cell and Reproductive Biology Institute of Zoology, Chinese Academy of Sciences Beijing China

2. University of Chinese Academy of Sciences Beijing China

3. Beijing Institute for Stem Cell and Regenerative Medicine Beijing China

4. Institute for Stem Cell and Regeneration Chinese Academy of Sciences Beijing China

5. Department of Obstetrics and Gynaecology Key Laboratory for Major Obstetric Diseases of Guangdong Province, Key Laboratory of Reproduction and Genetics of Guangdong Higher Education Institutes, The Third Affiliated Hospital of Guangzhou Medical University Guangzhou Guangdong China

Abstract

AbstractDifferent pluripotent cell types have been established by capturing pluripotency in different states. Human extended pluripotent stem cells (hEPSCs), recently established by two independent studies, have the capability of differentiating into both embryonic and extraembryonic lineages, as well as forming human blastoids, showing great potential for early human development modeling and regenerative medicine. Considering that X chromosome status in female human pluripotent stem cells is dynamic and heterogeneous, and often leads to functional consequences, we characterized it in hEPSCs. We derived hEPSCs from primed human embryonic stem cells (hESCs) with defined X chromosome status (pre‐ or post‐X chromosome inactivation) using two previously published methods. We showed that hEPSCs derived using both methods had highly similar transcription profiles and X chromosome status. However, the X chromosome status of hEPSCs is largely determined by the primed hESCs from which they were derived, suggesting a lack of complete reprogramming of X chromosome during primed to extended/expanded pluripotency conversion. Furthermore, we found that the X chromosome status of hEPSCs affected their ability to differentiate into embryonic or extraembryonic lineage cells. Taken together, our work characterized the X chromosome status of hEPSCs, providing important information for the future application of hEPSCs.

Funder

National Key Research and Development Program of China

Publisher

Wiley

Subject

Cell Biology,General Medicine

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